Zhang Haibin, Eaton Shane M, Herman Peter R
Department of Electrical and Computer Engineering and Institute for Optical Sciences, University of Toronto, 10 King's College Road, Toronto, Ontario M5S 3G4, Canada.
Opt Lett. 2007 Sep 1;32(17):2559-61. doi: 10.1364/ol.32.002559.
For the first time to our knowledge, high-strength (>30 dB) first-order Bragg grating waveguides were fabricated in bulk fused silica glass in a single-scanning step by modulating a high-repetition-rate femtosecond fiber laser with an external acousto-optic modulator. The modulation induced a waveguide segmentation by delivering controlled bursts of laser pulses to define an array of partially overlapped refractive index voxels. With appropriate choice of modulation frequency and sample scanning speed, low loss waveguides could be formed at high writing speeds to yield sharp Bragg spectral resonances tunable over the 1300 to 1550 nm telecom band. Effects of acousto-optic modulation duty cycle on propagation loss and grating strength are characterized. This modulation method offers facile control and integration of multiwavelength Bragg grating devices to enhance overall functionality of optical circuits in three-dimensional geometries.
据我们所知,首次通过使用外部声光调制器调制高重复率飞秒光纤激光器,在单扫描步骤中在块状熔融石英玻璃中制造出了高强度(>30 dB)的一阶布拉格光栅波导。这种调制通过传递受控的激光脉冲串来诱导波导分段,以定义一系列部分重叠的折射率体素阵列。通过适当选择调制频率和样品扫描速度,可以在高写入速度下形成低损耗波导,从而在1300至1550 nm电信波段产生可调节的尖锐布拉格光谱共振。表征了声光调制占空比对传播损耗和光栅强度的影响。这种调制方法为多波长布拉格光栅器件提供了简便的控制和集成,以增强三维几何结构中光电路的整体功能。